Rotor and stator support structures of significant size and mass are required to withstand the considerable loads that direct-drive wind turbine electrical generators face to maintain an air-gap clearance that is open and stable. With the increase of scale, reducing the weight and environmental impact of these support structures is believed to be one of the key components to unlocking the true potential of direct-drive generators. An investigation on the electrical generator rotor structure of the IEA 15 MW offshore reference wind turbine was conducted. An integrated approach that considered the environmental impact, including the manufacturing energy usage and CO2 footprint, as well as the financial repercussions of structural parameter mo...
Direct-drive generators for wind turbines are high torque, low speed machines which require a heavy ...
This thesis focuses on permanent magnet "direct drive" electrical generators for wind turbines with...
The use of generative design as an alternative to typical structural optimization techniques opens t...
Rotor and stator support structures of significant size and mass are required to withstand the consi...
One way to achieve increased wind capacity is by installing larger and more efficient wind turbines,...
Abstract: One way to achieve increased wind capacity is by installing larger and more efficient wind...
Direct-drive generators are recognised for their low maintenance compared with conventional drivetra...
Reducing the structural mass of low speed multi-MW electrical machines for renewable energy purposes...
Heavy, large and robust supporting structures are needed to keep the airgap clearance of direct-driv...
The study presents an efficient computational investigation on the behaviour of the direct-drive sys...
Direct-drive permanent magnet generators for multi-MW wind turbines are low speed high torque electr...
Direct-drive permanent magnet generators for multi-MW wind turbines are low speed high torque electr...
Direct-drive generators for wind turbines are high torque, low speed machines which require a heavy ...
Direct-drive generators for wind turbines are high torque, low speed machines which require a heavy ...
This thesis focuses on permanent magnet "direct drive" electrical generators for wind turbines with...
The use of generative design as an alternative to typical structural optimization techniques opens t...
Rotor and stator support structures of significant size and mass are required to withstand the consi...
One way to achieve increased wind capacity is by installing larger and more efficient wind turbines,...
Abstract: One way to achieve increased wind capacity is by installing larger and more efficient wind...
Direct-drive generators are recognised for their low maintenance compared with conventional drivetra...
Reducing the structural mass of low speed multi-MW electrical machines for renewable energy purposes...
Heavy, large and robust supporting structures are needed to keep the airgap clearance of direct-driv...
The study presents an efficient computational investigation on the behaviour of the direct-drive sys...
Direct-drive permanent magnet generators for multi-MW wind turbines are low speed high torque electr...
Direct-drive permanent magnet generators for multi-MW wind turbines are low speed high torque electr...
Direct-drive generators for wind turbines are high torque, low speed machines which require a heavy ...
Direct-drive generators for wind turbines are high torque, low speed machines which require a heavy ...
This thesis focuses on permanent magnet "direct drive" electrical generators for wind turbines with...
The use of generative design as an alternative to typical structural optimization techniques opens t...